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  • This paper describes coupling of damage mechanics and moisture transport. Damage mechanics is used in such cases where many micro-cracks or voids are created. The presence of micro-cracks and voids leads to reduction of the Young's modulus but it has also an influence on water permeability. Growing voids increases the porosity and moisture transport is faster. The water permeability is increased for a low level of damage. If the damage parameter is close to one, new water permeability is determined using the Hagen-Poisseuille law. Coupled hydro-mechanical model is used in numerical simulation of a store tank.
  • This paper describes coupling of damage mechanics and moisture transport. Damage mechanics is used in such cases where many micro-cracks or voids are created. The presence of micro-cracks and voids leads to reduction of the Young's modulus but it has also an influence on water permeability. Growing voids increases the porosity and moisture transport is faster. The water permeability is increased for a low level of damage. If the damage parameter is close to one, new water permeability is determined using the Hagen-Poisseuille law. Coupled hydro-mechanical model is used in numerical simulation of a store tank. (en)
Title
  • Fully Coupled Moisture Transport in partially Damaged Materials
  • Fully Coupled Moisture Transport in partially Damaged Materials (en)
skos:prefLabel
  • Fully Coupled Moisture Transport in partially Damaged Materials
  • Fully Coupled Moisture Transport in partially Damaged Materials (en)
skos:notation
  • RIV/68407700:21110/14:00222436!RIV15-GA0-21110___
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  • P(GA13-18652S)
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  • 17635
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  • RIV/68407700:21110/14:00222436
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  • damage mechanics; moisture transport; isotropic damage model; fully coupled model; permeability (en)
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  • [6390FC1BD0C7]
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  • Neapol
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  • PROCEEDINGS OF THE TWELFTH INTERNATIONAL CONFERENCE ON COMPUTATIONAL STRUCTURES TECHNOLOGY
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  • Koudelka, Tomáš
  • Kruis, Jaroslav
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issn
  • 1759-3433
number of pages
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  • Civil-Comp Press Ltd
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  • 978-1-905088-61-4
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  • 21110
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